首页> 外文期刊>Turkish Journal of Engineering and Environmental Sciences >Performance Evaluation of Electrocoagulation Process for Removal of Chromium(VI)from Synthetic Chromium Solutions Using Iron and Aluminum Electrodes
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Performance Evaluation of Electrocoagulation Process for Removal of Chromium(VI)from Synthetic Chromium Solutions Using Iron and Aluminum Electrodes

机译:铁和铝电极电凝法从合成铬溶液中去除铬的性能评估

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摘要

The performance of electrocoagulation with iron and aluminum sacrificial anode for removal of Cr(VI)was investigated.Several working parameters,such as pollutant concentration,pH,electrical potential,COD,turbidity,and contact time were studied in an attempt to achieve a higher removal capacity.Solutions of varying chromium concentrations(5-50-500 ppm)were prepared.To follow the progress of the treatment,samples of 25 ml were taken at 20 min intervals for up to 1 h and then filtered(0.45 mu)to eliminate sludge formed during electrolysis.The pH of the initial solution was also varied to study their effects on the chromium removal efficiency.Results obtained with synthetic wastewater revealed that the most effective removal capacities of the studied metals could be achieved when the pH was kept at 3.In addition,the increase of electrical potential,in the range of 20-40 V,enhanced the treatment rate without affecting the charge loading required to reduce metal ion concentrations under admissible legal levels.The process was successfully applied to the treatment of electroplating wastewater where an effective reduction of Cr(VI)concentration under legal limits was obtained just after 20-60 min.The results of this study showed that the removal efficiency of chromium with iron electrodes is higher compared to aluminum electrodes.Also,it can be concluded that the electrocoagulation process has the potential to be utilized for cost-effective removal of heavy metals from water and wastewater.
机译:研究了铁铝牺牲阳极电凝去除Cr(VI)的性能。研究了污染物浓度,pH,电势,COD,浊度和接触时间等几个工作参数,以期达到更高的目标。去除铬的能力。制备了各种铬浓度(5-50-500 ppm)的溶液。为了跟踪处理的进展,以20分钟的间隔采集25毫升的样品长达1小时,然后过滤(0.45微米)至去除初始溶液的pH值以研究其对铬去除效率的影响。合成废水的结果表明,将pH保持在50°C时,可以达到研究金属的最有效去除能力。 3.此外,在20-40 V范围内增加电位,可提高处理速度,而不会影响降低金属离子浓度下所需的电荷负载该方法已成功应用于电镀废水的处理,该电镀废水仅在20-60分钟后即可有效降低Cr(VI)的浓度。本研究结果表明,铬的去除效率为铁电极比铝电极高。此外,可以得出结论,电凝工艺具有可用于经济有效地去除水和废水中重金属的潜力。

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